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Calculating the volume of elongated bubbles and droplets in microchannels from a top view image

机译:从顶视图图像计算微通道中拉长的气泡和液滴的体积

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We present a theoretical model to calculate the volume of non-wetting bubbles and droplets in segmented microflows from given dimensions of the microchannel and measured lengths of bubbles and droplets. Despite the importance of these volumes in interpreting experiments on reaction kinetics and transport phenomena, an accurate model like the one we present here did not yet exist. The model has its theoretical basis in the principle of interfacial energy minimization and is set up such that volume calculations are possible for a wide variety of channel geometries. We successfully validated our model with the 3D numerical energy minimization code SURFACE EVOLVER for the three most commonly used channel geometries in the field of microfluidics and provide accurate user-friendly equations for these geometries.
机译:我们提出了一种理论模型,用于根据给定的微通道尺寸和测量的气泡和液滴长度来计算分段微流中非润湿气泡和液滴的体积。尽管这些体积在解释反应动力学和传输现象的实验中很重要,但像我们现在介绍的那样,尚不存在准确的模型。该模型在界面能量最小化原理上具有其理论基础,并且该模型的建立使得可以对各种通道几何形状进行体积计算。我们使用3D数字能量最小化代码SURFACE EVOLVER成功验证了我们的模型,以解决微流体领域中三种最常用的通道几何结构,并为这些几何结构提供了精确的用户友好方程式。

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